Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Distribution of GABA, glutamate decarboxylase 67 (GAD67), Vesicular GABA transporter (VGAT) and GABA B -receptor Immunoreactivities in the Rat Esophagus

View through CrossRef
Abstract We investigated the distributions of gamma-aminobutyric acid (GABA), vesicular GABA transporter (VGAT), GABA B -receptor (GABA B -R) and glutamate decarboxylase 67 (GAD67), immunoreactivities in the rat esophagus. GABA immunoreactivity was found in the nerve fibers of the esophagus, but not in the neurons. A few GABA-immunoreactive nerve fibers ran along the muscularis mucosae and some GABA-immunoreactive nerve bundles and fibers ran along and contacted clusters of myenteric neurons. Numerous GABA-immunoreactive nerve terminals ran along the striated muscles and formed motor endplates on the muscles while GABA-immunoreactive nerve fibers contacted nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d)-positive or choline acetyltransferase (ChAT)-immunopositive neurons in the myenteric plexus. NADPH-d-positive nerve fibers often intermingled with GABA-immunoreactive motor endplates in the striated muscles. The GABA-immunoreactive nerve fibers contacting the myenteric neurons were also ChAT-immunopositive. The GABA-immunoreactive nerve fibers that formed motor endplates corresponding to α-bungarotoxin (BTX)-positive areas on the striated muscles were also ChAT-immunopositive. The average percentage of GABA-immunoreactive motor endplates to total ChAT-immunoreactive motor endplates in the upper, middle, and lower portions of the esophagus was 24.8%. VGAT immunoreactivity was seen in almost all motor endplates on the esophageal striated muscles, but not in the neurons of the myenteric plexus. Some VGAT-immunoreactive nerve terminals contacted clusters of myenteric neurons. GABA B -R immunoreactivity was observed in numerous myenteric ganglia and in the proximal-to-distal part of the axons of the ganglia, but not in the striated and smooth muscles. GABA B -R-immunoreactive neurons were brain nitric oxide synthase (bNOS)- or ChAT-immunopositive. The present study suggests that GABA and GABA B -R may be present in the neuronal elements of the striated muscle of the rat esophagus and may play an important role in the local inhibitory system of rat esophageal motility. No GAD67 immunoreactivity was found in the nerve fibers and neurons of the esophagus. In the nucleus ambiguus and in the dorsal motor nucleus of the vagal nerves, GAD67 and VGAT immunoreactivities were shown in numerous nerve fibers on the surface of the cell bodies, but not in the cell bodies of the vesicular acetylcholine transporter-immunoreactive neurons. The present study suggests that GABA may be taken up and accumulated in the synaptic vesicles by VGAT in the nerve terminals, but not in the cell bodies of the neurons of the brainstem.
Title: Distribution of GABA, glutamate decarboxylase 67 (GAD67), Vesicular GABA transporter (VGAT) and GABA B -receptor Immunoreactivities in the Rat Esophagus
Description:
Abstract We investigated the distributions of gamma-aminobutyric acid (GABA), vesicular GABA transporter (VGAT), GABA B -receptor (GABA B -R) and glutamate decarboxylase 67 (GAD67), immunoreactivities in the rat esophagus.
GABA immunoreactivity was found in the nerve fibers of the esophagus, but not in the neurons.
A few GABA-immunoreactive nerve fibers ran along the muscularis mucosae and some GABA-immunoreactive nerve bundles and fibers ran along and contacted clusters of myenteric neurons.
Numerous GABA-immunoreactive nerve terminals ran along the striated muscles and formed motor endplates on the muscles while GABA-immunoreactive nerve fibers contacted nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d)-positive or choline acetyltransferase (ChAT)-immunopositive neurons in the myenteric plexus.
NADPH-d-positive nerve fibers often intermingled with GABA-immunoreactive motor endplates in the striated muscles.
The GABA-immunoreactive nerve fibers contacting the myenteric neurons were also ChAT-immunopositive.
The GABA-immunoreactive nerve fibers that formed motor endplates corresponding to α-bungarotoxin (BTX)-positive areas on the striated muscles were also ChAT-immunopositive.
The average percentage of GABA-immunoreactive motor endplates to total ChAT-immunoreactive motor endplates in the upper, middle, and lower portions of the esophagus was 24.
8%.
VGAT immunoreactivity was seen in almost all motor endplates on the esophageal striated muscles, but not in the neurons of the myenteric plexus.
Some VGAT-immunoreactive nerve terminals contacted clusters of myenteric neurons.
GABA B -R immunoreactivity was observed in numerous myenteric ganglia and in the proximal-to-distal part of the axons of the ganglia, but not in the striated and smooth muscles.
GABA B -R-immunoreactive neurons were brain nitric oxide synthase (bNOS)- or ChAT-immunopositive.
The present study suggests that GABA and GABA B -R may be present in the neuronal elements of the striated muscle of the rat esophagus and may play an important role in the local inhibitory system of rat esophageal motility.
No GAD67 immunoreactivity was found in the nerve fibers and neurons of the esophagus.
In the nucleus ambiguus and in the dorsal motor nucleus of the vagal nerves, GAD67 and VGAT immunoreactivities were shown in numerous nerve fibers on the surface of the cell bodies, but not in the cell bodies of the vesicular acetylcholine transporter-immunoreactive neurons.
The present study suggests that GABA may be taken up and accumulated in the synaptic vesicles by VGAT in the nerve terminals, but not in the cell bodies of the neurons of the brainstem.

Related Results

1737-P: Bulk GABA Secretion from Pancreatic Islets Is Not Co-released with Insulin
1737-P: Bulk GABA Secretion from Pancreatic Islets Is Not Co-released with Insulin
Introduction & Objective: Gamma Aminobutyric Acid (GABA) is a neurotransmitter found in inhibitory neurons but is also synthesized and secreted at high levels in pancreatic isl...
KAJIAN RUMAH GABA-GABA DI PERKOTAAN MERAUKE
KAJIAN RUMAH GABA-GABA DI PERKOTAAN MERAUKE
ABSTRAK. Merauke sebagai kabupaten terujung timur dari wilayah NKRI, selain dikenal dengan area perbatasannya juga menghasilkan tanaman sagu (Metroxylon sp.). Bagian dari tanaman s...
Modelling the spatial and temporal constrains of the GABAergic influence on neuronal excitability
Modelling the spatial and temporal constrains of the GABAergic influence on neuronal excitability
Abstract GABA (γ-amino butyric acid) is an inhibitory neurotransmitter in the adult brain that can mediate depolarizing responses during developm...
Secretive glutamate decarboxylase of Corynebacterium glutamicum catalyzes an efficient conversion of glutamic acid to γ-aminobutyric acid
Secretive glutamate decarboxylase of Corynebacterium glutamicum catalyzes an efficient conversion of glutamic acid to γ-aminobutyric acid
γ-Aminobutyric acid (GABA) is a non-protein amino acid produced from the decarboxylation of glutamate by glutamate decarboxylase. Corynebacterium glutamicum is the most promising h...
Runahead threads
Runahead threads
Los temas de investigación sobre multithreading han ganado mucho interés en la arquitectura de computadores con la aparición de procesadores multihilo y multinucleo. Los procesador...
Biosensor Cell Array Reveals Temporal GABA Secretion Dynamics from Pancreatic Islets
Biosensor Cell Array Reveals Temporal GABA Secretion Dynamics from Pancreatic Islets
Abstract Pancreatic beta cells have the unique function of synthesizing and secreting high amounts of the inhibitory neurotransmitter γ-aminobutyric acid (GABA). Th...
Development of tolerance to the effects of vigabatrin (γ‐vinyl‐GABA) on GABA release from rat cerebral cortex, spinal cord and retina
Development of tolerance to the effects of vigabatrin (γ‐vinyl‐GABA) on GABA release from rat cerebral cortex, spinal cord and retina
The effects of acute and chronic vigabatrin (γ‐vinyl‐GABA) (GVG) administration on γ‐aminobutyric acid (GABA) levels and release in rat cortical slices, spinal cord slices and reti...

Back to Top